Prob.3 An infinitely long cylinder, of radius R, carries a "frozen-in" magnetization. parallel to the axis, M = ks 2, where k is a constant and s is the distance from the axis; there is no free current anywhere. Find the magnetic field inside and outside the cylinder by two different methods: (a) locate all the bound currents, and calculate the field they produce.

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Prob.3
An infinitely long cylinder, of radius R, carries a "frozen-in" magnetization.
parallel to the axis,
M = ks î,
where k is a constant and s is the distance from the axis; there is no free current anywhere.
Find the magnetic field inside and outside the cylinder by two different methods:
(a) locate all the bound currents, and calculate the field they produce.
Transcribed Image Text:Prob.3 An infinitely long cylinder, of radius R, carries a "frozen-in" magnetization. parallel to the axis, M = ks î, where k is a constant and s is the distance from the axis; there is no free current anywhere. Find the magnetic field inside and outside the cylinder by two different methods: (a) locate all the bound currents, and calculate the field they produce.
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